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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >Development, validation and comparison of surrogate matrix and surrogate analyte approaches with UHPLC–MS/MS to simultaneously quantify dopamine, serotonin and γ γ ‐aminobutyric acid in four rat brain regions
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Development, validation and comparison of surrogate matrix and surrogate analyte approaches with UHPLC–MS/MS to simultaneously quantify dopamine, serotonin and γ γ ‐aminobutyric acid in four rat brain regions

机译:UHPLC-MS / MS与UHPLC-MS / MS接近替代基质和替代分析物的显影,验证和比较,同时量化四鼠大鼠脑区中的多巴胺,血清素和γγ-氨基丁酸

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Abstract As biomarkers, endogenous neurotransmitters play critical roles in the process of neuropsychiatric diseases, and neurotransmitter levels in different brain regions can contribute to neurological disease diagnosis and treatment. Due to the lack of a blank matrix for endogenous neurotransmitters, surrogate‐matrix and surrogate‐analyte approaches have been used for the determination of neurotransmitters to solve this problem. In this study, we capitalised on the high accuracy, precision, and throughput of UHPLC‐MS/MS and developed new methods based on the two approaches. Both approaches satisfied FDA and EMA validation criterias after an appropriate parallelism assessment, and they were used to further quantify the three endogenous neurotransmitters, including dopamine (DA), serotonin (5‐HT) and γ‐aminobutyric acid (GABA) in rat brain four regions (cortex, striatum, hypothalamus and hippocampus) which represent the catecholamines, indolamines, and amino acids, respectively. Comparison of the results in the same rats (n?=?10) showed there was no significant difference in DA, 5‐HT, or GABA levels between the two approaches (P 0.05). The concentrations of DA and GABA were highest in striatum and hypothalamus, respectively, and the levels of 5‐HT were paralleled in striatum and hippocampus almost 2‐fold higher than other regions. This is the first study to compare these two approaches in the determination of endogenous neurotransmitter content in the rat brain, and the surrogate‐matrix approach proved to be simple, rapid, and reliable, considering cost, matrix similarity, and practicality.
机译:摘要作为生物标志物,内源性神经递质在神经精神疾病过程中起重要作用,不同脑区的神经递质水平可以有助于神经疾病诊断和治疗。由于缺乏内源性神经递质的空白基质,替代 - 基质和替代分析物方法已被用于确定神经递质以解决这个问题。在这项研究中,我们利用UHPLC-MS / MS的高精度,精度和吞吐量,并基于两种方法开发了新方法。在适当的平行评估后,两者都接近满足的FDA和EMA验证标准,并且它们用于进一步量化三种内源性神经递质,包括大鼠脑筋中的多巴胺(DA),血清素(5-HT)和γ-氨基丁酸(GABA)分别代表儿茶酚胺,吲哚胺和氨基酸的地区(皮质,纹状体,下丘脑和海马)。结果比较同一大鼠的结果(n?=α10)显示,两种方法之间的DA,5-HT或GABA水平没有显着差异(P> 0.05)。 Da和Gaba的浓度分别在纹状体和下丘脑中最高,5-HT水平在纹状体和海马上平行于比其他地区高出2倍。这是第一项研究,用于比较这两种方法在测定大鼠大脑中的内源性神经递质含量方面的方法,并且代理矩阵方法证明是简单,快速,可靠的,考虑成本,矩阵相似性和实用性。

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